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- W4291282077 abstract "This study investigated the influence of the roughness of AISI M2 steel substrate on the mechanical properties and performance of the DLC film exposed to a tribosystems with a hypoeutectic aluminum-silicon alloy, evaluating the adhesion properties, resistance to microabrasive wear and friction coefficient in sliding test. The film was deposited in samples with three distinct roughnesses, depending on the finishing condition: casted, grinded and polished. Results showed that the substrate roughness does not influence the structure of the DLC, but its morphology and tribological behavior. A better adhesion of the DLC was observed in the casted and polished substrates. In the microabrasive test, less wear resistance was found for rougher substrates, the polished substrate showed lower wear rate and specific wear coefficient. In the sliding test, different film behaviors were observed in the running-in and steady state regimes, with the casted substrate responsible for the lowest friction coefficient. • Substrate roughness doesn't influence the structure of the DLC (sp 2 and sp 3 bonds). • The film obtained good adhesion for the casted and polished substrates. • In micro-abrasive wear, polished substrate performed better, with low wear rate. • In pin-on-disk test, DLC x Al–Si obtained less pulled out material than HSS x Al–Si. • In pin-on-disk test, casted substrate obtained the best result." @default.
- W4291282077 created "2022-08-14" @default.
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- W4291282077 date "2022-10-01" @default.
- W4291282077 modified "2023-09-29" @default.
- W4291282077 title "Tribological aspects of the Diamond-like carbon film applied to different surfaces of AISI M2 steel" @default.
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- W4291282077 doi "https://doi.org/10.1016/j.wear.2022.204469" @default.
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